"Bubble Dynamics and Shock Waves" - Information and Links:

Bubble Dynamics and Shock Waves - Info and Reading Options

Book's cover
The cover of “Bubble Dynamics and Shock Waves” - Open Library.

"Bubble Dynamics and Shock Waves" was published by Springer Berlin Heidelberg in 2013 - Berlin, Heidelberg, it has 393 pages and the language of the book is English.


“Bubble Dynamics and Shock Waves” Metadata:

  • Title: ➤  Bubble Dynamics and Shock Waves
  • Author:
  • Language: English
  • Number of Pages: 393
  • Publisher: Springer Berlin Heidelberg
  • Publish Date:
  • Publish Location: Berlin, Heidelberg

“Bubble Dynamics and Shock Waves” Subjects and Themes:

Edition Specifications:

  • Format: [electronic resource] /
  • Pagination: X, 393 p. 180 illus.

Edition Identifiers:

AI-generated Review of “Bubble Dynamics and Shock Waves”:


"Bubble Dynamics and Shock Waves" Table Of Contents:

  • 1- <p>Part A Bubble Dynamics and Shock Wave Emission
  • 2- Part B Shock Wave Propagation in Bubbly Liquids
  • 3- Part C Shocks in Cavitating Flows
  • 4- Part D Applications in Medical and Earth Sciences.</p>.

"Bubble Dynamics and Shock Waves" Description:

The Open Library:

<p>This volume of the Shock Wave Science and Technology Reference Library is concerned with the interplay between bubble dynamics and shock waves. It is divided into four parts containing twelve chapters written by eminent scientists. Topics discussed include shock wave emission by laser generated bubbles (W Lauterborn, A Vogel), pulsating bubbles near boundaries (DM Leppinen, QX Wang, JR Blake), interaction of shock waves with bubble clouds (CD Ohl, SW Ohl), shock propagation in polydispersed bubbly liquids by model equations (K Ando, T Colonius, CE Brennen. T Yano, T Kanagawa, M Watanabe, S Fujikawa) and by DNS (G Tryggvason, S Dabiri), shocks in cavitating flows (NA Adams, SJ Schmidt, CF Delale, GH Schnerr, S Pasinlioglu) together with applications involving encapsulated bubble dynamics in imaging (AA Doinikov, A Novell, JM Escoffre, A Bouakaz), shock wave lithotripsy (P Zhong), sterilization of ships’ ballast water (A Abe, H Mimura) and bubbly flow model of volcano eruptions ((VK Kedrinskii, K Takayama). The book offers a timely reference for graduate students as well as professional scientists and engineers interested in the interaction of shock waves with bubbles and their propagation properties in bubbly liquids with applications in medical and earth sciences. </p>

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